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首页> 外文期刊>Journal of strength and conditioning research >Sprint running with a body-weight supporting kite reduces ground contact time in well-trained sprinters
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Sprint running with a body-weight supporting kite reduces ground contact time in well-trained sprinters

机译:带有体重支撑风筝的短跑可以减少训练有素的短跑运动员的地面接触时间

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It is well founded that ground contact time is the crucial part of sprinting because the available time window to apply force to the ground diminishes with growing running velocity. In view of this knowledge, the purpose of this study was to investigate the effects of body-weight support during full-effort sprints on ground contact time and selected stride parameters in 19 Austrian male elite sprinters. A kite with a lifting effect combined with a towing system to erase drag was used. The subjects performed flying 20-m sprints under 3 conditions: (a) free sprint; (b) body-weight supported sprint-normal speed (BWS-NS); and (c) body-weight supported sprint-overspeed (BWS-OS). Sprint cycle characteristics were recorded during the high-speed phase by an optical acquisition system. Additionally, running velocity was derived from the 20-m sprint time. Compared with the fastest free sprint, running velocity, step length, and step frequency remained unchanged during BWSNS, whereas ground contact time decreased (25.80%), and air time increased (+5.79%) (both p < 0.001). Throughout, BWS-OS ground contact time (27.66%) was reduced, whereas running velocity (+2.72%), air time (+4.92%), step length (+1.98%) (all p < 0.001), and step frequency (+1.05%; p < 0.01) increased. Compared with BWS-NS, BWS-OS caused an increase in running velocity (+3.33%), step length (+1.92%) (both p < 0.001), and step frequency (+1.37%; p < 0.01), whereas ground contact time was diminished (21.97%; p < 0.001). In summary, sprinting with a bodyweight supporting kite appeared to be a highly specific method to simulate an advanced performance level, indicated by higher running velocities requiring reduced ground contact times. The additional application of an overspeed condition led to a further reduction of ground contact time. Therefore, we recommend body-weight supported sprinting as an additional tool in sprint training.
机译:众所周知,地面接触时间是短跑的关键部分,因为向地面施加力的可用时间窗口会随着运行速度的增加而减小。有鉴于此,本研究的目的是调查19名奥地利男性优秀短跑运动员在全力冲刺期间的体重支持对地面接触时间和选定步幅参数的影响。使用了具有提升效果的风筝,并结合了牵引系统以消除风阻。受试者在3种情况下进行了20米的飞行:(a)自由奔跑; (b)体重支持的短跑正常速度(BWS-NS); (c)支持体重的冲刺超速(BWS-OS)。在高速阶段,通过光学采集系统记录了冲刺周期特征。此外,运行速度是从20米的冲刺时间得出的。与最快的自由冲刺相比,在BWSNS中跑步速度,步长和步频保持不变,而地面接触时间减少了(25.80%),空中时间增加了(+ 5.79%)(p <0.001)。整个过程中,BWS-OS的地面接触时间减少了(27.66%),而运行速度(+ 2.72%),空气时间(+ 4.92%),步长(+ 1.98%)(全部p <0.001)和步频( + 1.05%; p <0.01)增加。与BWS-NS相比,BWS-OS导致跑步速度(+ 3.33%),步长(+ 1.92%)(p <0.001)和步频(+ 1.37%; p <0.01)的增加。接触时间减少了(21.97%; p <0.001)。总而言之,以体重支撑的风筝冲刺似乎是模拟先进性能水平的高度特定的方法,其表现为较高的行驶速度要求减少与地面的接触时间。超速条件的额外应用导致地面接触时间进一步减少。因此,我们建议将体重支持的短跑作为短跑训练中的附加工具。

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